- 更多网络例句与骨髓细胞生成相关的网络例句 [注:此内容来源于网络,仅供参考]
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Shafie Fazel, cardiac surgery resident at TGH, University of Toronto surgeon/scientist program fellow and lead author of the study entitled,"Cardioprotective c-kit+ cells are from the bone marrow and regulate the myocardial balance of angiogenic cytokines," published today in The Journal of Clinical Investigation. When damaged heart tissue sends out an 'SOS' distress signal, this subset of bone marrow cells mobilizes quickly and stimulates the growth of new blood vessels in the heart.
一名来自多伦多大学的外科医生/科学家计划研究组的的成员,同时也是今天发表在《临床研究》中的"产生于骨髓的心脏保护细胞----C-kit+细胞调节着心肌血管生成因子的平衡"论文的主要作者----特里普勒总医院心外科住院医师这样描述,当心脏细胞受损时发出'SOS'的求救信号,这种骨髓细胞亚群快速动员和刺激新生心脏血管的生长。
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Can accelerate the bone marrow cell from G1 phase into S phase when we measure it's Cell cycle, it make S phase rate was increased .thus it promoted DNA synthesize and repaired. Mice irradiated at dose of 5.5 Gy gamma-irradiation showed timed-related decreases and restores in peripheral blood picture at day 1 through day 21, the counts of WBC of these group had taken drug has various degree to increase than irradiation control group in day 1. Grugs failed to protected the peripheral blood cell at lowest point, but seems promote their rescovery.9803 treated group was distinct. At 7days after mice were radiated in 3.5 Gy. we observed drug can Significantly hold back the decreased number of hematopoietic progenitors colony forming radiation induced. These findings indicated 9803 have a certain radioprotective activity against gammer irradiation in mice.
给药组的 CFU-S 数量较照射对照组明显增加,3.5Gy 照后第七天观察给药9803组对小鼠骨髓造血组细胞集落生成能力的影响,给药组的造血祖细胞集落的形成能力强于照射对照组,并且9803组明显优于523组。5.5Gy 照射引起的小鼠的外周血细胞数量的降低以 WBC 发生最早,照后24小时给药组的 WBC 数量均比照射对照组有不同程度的升高,以9803各给药组最为明显,药物未能使照射引起的外周血细胞最低值升高,而有降低的趋势,但给药对照射后期外周血象的总体恢复有较好的促进作用。7.5Gy 照射后第七天测定小鼠骨髓细胞周期的测定中发现9803具有促进骨髓细胞由 G1期进入 S 期的效应,致使 G0/G1期细胞显著减少, S 期细胞比率显著增加,这利于促进 DNA 合成修复,即促进骨髓细胞增殖,骨髓细胞 DNA 含量给药组显著高于照射对照组。
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But the role of TPO on megakaryocyte growth and development and the expression of TPO mRNA in human bone marrow are not well known.
为进一步了解TPO在巨核细胞—血小板生长发育过程中所起的作用,本文就TPO在体外培养过程中对巨核细胞生成的影响,对基质细胞以及血小板减少症患者骨髓中TPO mRNA的表达进行了研究探索。
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Methods:The femur were removed aseptically from adult SD rat (aged 12 weeks).
目的:探讨IL-6对成年大鼠骨髓破骨细胞生成诱导的影响。
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Inhibition of myelopoiesis, drug fever and hepatitis.
较重的不良反应(远不及轻度不良反应常见)包括抑制骨髓细胞生成,药物热及肝炎。
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9 Major adverse reactions (much less common than the minor adverse reactions) include inhibition of myelopoiesis, drug fever and hepatitis.
较重的不良反应包括抑制骨髓细胞生成,药物热及肝炎。
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9 Major adverse reactions (much less common than the minor adverse reactions) include inhibition of myelopoiesis, drug fever and hepatitis.65i
较重的不良反应(远不及轻度不良反应常见)包括抑制骨髓细胞生成,药物热及肝炎。65i
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9 Major adverse reactions (much less common than the minoradverse reactions) include inhibition of myelopoiesis, drug feverand hepatitis.
较重的不良反应(远不及轻度不良反应常见)包括抑制骨髓细胞生成,药物热及肝炎。
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9 Major adverse reactions (much less common than the minor adverse reactions) include inhibition of myelopoiesis, drug fever hepatitis.
较重的不良反应(远不及轻度不良反应常见 ssbbww )包括 www 。ddd tt。 com 抑制骨髓细胞生成,药物热及肝炎。
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Analysis of patient's primary leukemia blasts revealed that those carrying the t(8;21) generating AML1/ETO, the most common acute myeloid leukemia-associated fusion protein, display low levels of a microRNA-223 (miR-223), a regulator of myelopoiesis.
对原发性白血病的胚细胞进行分析发现具有 t (8;21)能够产生 AML1/ETO 蛋白,而这种蛋白是急性髓性白血病相关融合蛋白中最常见的一种,这样的白血病胚细胞具有微小 RNA-223( miR-223)的低表达, miR-223是骨髓细胞生成的调节因子。
- 更多网络解释与骨髓细胞生成相关的网络解释 [注:此内容来源于网络,仅供参考]
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bone marrow:髓
大家都知道,骨髓(bone marrow)是产生细胞的地方,最初产生的细胞叫干细胞(stem cells),骨髓干细胞促使生成组成血液的原细胞(progenitor cells),原细胞最后发展为红血细胞和白血细胞(具免疫功能).
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hematopoietic microenvironment:造血微环境
骨髓造血微环境(hematopoietic microenvironment)是造血系统的重要组成部分,通过产生和分泌细胞因子及细胞外基质等对造血细胞的生成和分化发挥着极其重要的作用.
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myelopathic:骨髓病性
myelomere 髓节 | myelopathic 骨髓病性 | myelopoiesis 髓细胞生成
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myelopoiesis:髓细胞生成
2008年陈竺教授与诸江教授等人在缺少活性病毒感染的一个生物过程中发现了一个重要的RIG-I诱导,并且通过实验证明这个重要的Rig-I诱导也在正常的髓细胞生成(myelopoiesis)过程中出现,并且小鼠中RIG-I基因的降解会引起进程性骨髓增生性失序(myeloproliferativedisorder),
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plasmocytoma:浆细胞瘤
这种疾病被称为多发性骨髓瘤(multiple myeloma)或浆细胞瘤(plasmocytoma). 此疾病的特征是:恶性肿瘤在骨髓内成长,由骨髓细胞中的浆细胞生成,并制造不正常的球蛋白(免疫球蛋白immunvglobulines和丙种球蛋白gammaglobulines),
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erythropoietin, EPO:促红细胞生成素
方法: 促红细胞生成素(erythropoietin EPO)在传统观点中被认为仅作用于骨髓造血细胞,近年发现EPO除在肾脏组织表达外,同时在肿瘤组织、神经组织、女性生殖系统恶性肿瘤有较强的表达,其作用还参与了抗凋亡、抗缺氧、促进新生血管生成等,